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28 August 2024 | Story André Damons | Photo Supplied
Prof Patricks Voua Otomo
Prof Patricks Voua Otomo, Associate Professor and subject head of Department of Zoology and Entomology at the University of the Free State (UFS).

In an effort to alleviate the burden of water contamination, Prof Patricks Voua Otomo, Associate Professor in the Department of Zoology and Entomology at the University of the Free (UFS) is researching how mushrooms can be used to significantly reduce the toxicity of water.

The degradation of river systems in South Africa has been linked primarily to the inability of municipalities to properly treat wastewater. According to the 2022 Green Drop Report, out of the existing 850 wastewater systems across 90 municipalities, only 23 (or less than 3%) qualified for the Green Drop Certification. This underscores the depth and breadth of the wastewater treatment crisis in South Africa and its potential implications for human and environmental health.

In 2030, billions of people will still lack access to safe water, sanitation and hygiene services – the most basic human need for health and well-being. Target 6.1 of the United Nations (UN) Sustainable Development Goals (SDGs) – SDG 6 – aims to achieve universal and equitable access to safe and affordable drinking water for all, while target 6.3 is also looking to improve water quality by reducing pollution, eliminating dumping and minimising release of hazardous chemicals and materials, halving the proportion of untreated wastewater and substantially increasing recycling and safe re-use globally by 2030.

These challenges inform Prof Voua Otomo’s research, which focuses on the drivers of river pollution in the Qwaqwa region, ways to mitigate/remediate their effects, and the development of simple and quick methods to assess water quality. His research, which is part of the UFS 2023 Impact Report, has drawn attention to localised incidences of terrestrial and aquatic contamination linked to sewage sludge management by local wastewater treatment plants.

Using mycofiltration to reclaim the quality of contaminated water

In Qwaqwa, wastewater treatment plants, however, are not the only source of river pollution, as a significant amount of river pollutants emanates directly from the communities that often dispose of their household waste directly into the waterways. This has led to unacceptable levels of pharmaceuticals such as biphenyl-4-ylacetic acid (an anti-inflammatory), efavirenz (an HIV medicine), and carbamazepine (an epilepsy medicine) ending up in rivers.

To attempt to reclaim the quality of contaminated water, ongoing research in Prof Voua Otomo’s laboratory involves the use of ‘mycofiltration’, i.e., the use of fungal mycelia for the purpose of water filtration. This relatively untapped eco-friendly technology is attracting more attention, yet its real merits are only now being established and documented scientifically.

“Various species of fungi have been explored in bioremediation studies, and those belonging to the Pleurotus genus (edible mushrooms) have demonstrated an exceptional ability in the biosorption of contaminants,” says Prof Voua Otomo.

In his field of research, Prof Voua Otomo says snails can be used as bioindicators (i.e., organisms used to assess the health of an environment or ecosystem, particularly by indicating the presence and impact of pollutants or other environmental stressors) or biomonitors (i.e., organisms or a biological systems used to assess the health of an environment, particularly by detecting changes in the levels of pollutants or other harmful substances).

“We designed a mycofilter made of mycelia from the mushroom species Pleurotus ostreatus and filtrated water contaminated with the organic insecticide imidacloprid and the inorganic chemical iron (III). The results showed that mycofiltration could remove up to 94% of iron (III) and 31% of imidacloprid.

“Mycofiltration works through a process called adsorption, which is the process where molecules, ions, or particles from a gas, liquid, or dissolved solid, stick to a surface. This happens when the adsorbate (the substance being adsorbed) attaches to the adsorbent (the surface it adheres to),” Prof Voua Otomo explains.

Mycofiltration viable and affordable for water remediation

This research is the brainchild of Sanele Mnkandla, a final-year PhD student in Prof Voua Otomo’s laboratory. “A few years ago, she suggested looking at mycofiltration as a means to improve the quality of contaminated water. Freshwater snails were the most suitable organisms to help assess the improvement of the water quality after mycofiltration,” explains Prof Voua Otomo.

According to him, they are currently exploring ways to upscale the mycofilter to improve the quality of larger bodies of water, including rivers. The duration of the process depends on the size of the filter, the amount of water to be filtered and the targeted chemicals. Bigger filters, explains Prof Voua Otomo, will filter larger amounts of water over a relatively longer time whereas smaller ones will be saturated quickly. The process could last from minutes to days.

“We have published a technical note on the topic and a proof of concept. We are currently testing this technology using wastewater effluent in the Qwaqwa region. We are also exploring local applications in rainwater harvesting.

“Mycofiltration is certainly a viable and affordable option for water remediation, which can find a wide range of applications in South Africa,” he says. 

Watch the video below

News Archive

Music programme receives a boost
2004-08-20

 

 

Back standing fltr: Mr Peter Guy - Founder and coordinator: Mangaung String Program and snr lecturer at the Musicon; Mrs Francine Duvenage, Manager: Human Resources, Wesbank. Middle fltr: Prof Frederick Fourie, Rector and Vice-Chancellor of the UFS; Mr Apie Otto, Area Manager: Vehicles, Wesbank Free State and Northern Cape. Front fltr: Mr John Minaar (17), Gr 12 Sand du Plessis Secondary School; Repiloe Olifant (14) Gr 10 Navalsig Secondary School; Moeketsi Khang (16) Gr 11 Tsoseletso Secondary School; Stella Benbooi (12) Gr 7 Bochabela Primary School.

The Mangaung String Programme, a partnership between the University of the Free State (UFS) and the Free State Musicon, an institution that falls under the auspices of the Free State Department of Sport, Arts, Culture, Science and Technology, has recently received heartened encouragement when an amount of R342 000,00 was granted to the programme by the Wesbank/First Rand Foundation for the purchasing of a bus.

“Transporting the children who are part of the programme back and forth for tuition and rehearsals has been a major problem as most of them stay in the townships on the outskirts of Bloemfontein ,” said Mr Peter Guy, founder and coordinator of the programme.

“The bus will ensure that those children who have the passion, dedication and commitment can spend every afternoon if they so choose practicing, learning about music and rehearsing with children from all over Bloemfontein,” said Mr Guy.

Mr Guy, a Senior Lecturer at the Musicon, started the programme in 1998 with funding from the Musicon Parents Teachers Association, initially with 15 pupils - today 150 children participate in the programme. In 2002 the UFS formed a partnership with the Free State Musicon in the provisioning of facilities, tuition and musical instruments. “Since the involvement of the UFS, the programme has almost tripled in size and one

fulltime teaching position is now jointly funded by both institutions,” said Mr Guy.

According to Mr Guy the Free State Symphony Orchestra has committed itself to providing opportunities for gifted young players from all backgrounds to perform, develop their talents and to grow musically. Some of the children of the Mangaung String Programme will soon be joining the Free State Symphony Concert in concerts.

Media Release
Issued by: Lacea Loader
Media Representative
Tel: (051) 401-2584
Cell: 083 645 2454
E-mail: loaderl.stg@mail.uovs.ac.za
19 August 2004
 

 

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